IRCCS Istituto Ortopedico Galeazzi, Laboratorio di Biotecnologie Applicate all'Ortopedia, I-20161 Milan, Italy.
University of Milan, EPIGET-Epidemiology, Epigenetics and Toxicology Lab, Department of Clinical Sciences and Community Health, I-20122 Milan, Italy.
Cells. 2019 Apr 23;8(4):369. doi: 10.3390/cells8040369.
Mesenchymal stem cells (MSCs) are promising tools for cell-based therapies due to their homing to injury sites, where they secrete bioactive factors such as cytokines, lipids, and nucleic acids, either free or conveyed within extracellular vesicles (EVs). Depending on the local environment, MSCs' therapeutic value may be modulated, determining their fate and cell behavior. Inflammatory signals may induce critical changes on both the phenotype and secretory portfolio. Intriguingly, in animal models resembling joint diseases as osteoarthritis (OA), inflammatory priming enhanced the healing capacity of MSC-derived EVs. In this work, we selected miRNA reference genes (RGs) from the literature (let-7a-5p, miR-16-5p, miR-23a-3p, miR-26a-5p, miR-101-3p, miR-103a-3p, miR-221-3p, miR-423-5p, miR-425-5p, U6 snRNA), using EVs isolated from adipose-derived MSCs (ASCs) primed with IFNγ (iASCs). geNorm, NormFinder, BestKeeper, and ΔCt methods identified miR-26a-5p/16-5p as the most stable, while miR-103a-rp/425-5p performed poorly. Our results were validated on miRNAs involved in OA cartilage trophism. Only a proper normalization strategy reliably identified the differences between donors, a critical factor to empower the therapeutic value of future off-the-shelf MSC-EV isolates. In conclusion, the proposed pipeline increases the accuracy of MSC-EVs embedded miRNAs assessment, and help predicting donor variability for precision medicine approaches.
间充质干细胞(MSCs)由于其向损伤部位归巢的特性,成为细胞治疗的有前途的工具,在损伤部位它们会分泌生物活性因子,如细胞因子、脂质和核酸,这些因子可以自由存在或通过细胞外囊泡(EVs)传递。根据局部环境的不同,MSCs 的治疗价值可能会发生变化,从而决定其命运和细胞行为。炎症信号可能会对表型和分泌谱产生关键性改变。有趣的是,在类似于骨关节炎(OA)等关节疾病的动物模型中,炎症的启动增强了 MSC 衍生 EVs 的愈合能力。在这项工作中,我们从文献中选择了 miRNA 参考基因(RGs)(let-7a-5p、miR-16-5p、miR-23a-3p、miR-26a-5p、miR-101-3p、miR-103a-3p、miR-221-3p、miR-423-5p、miR-425-5p、U6 snRNA),使用 IFNγ (iASCs)预刺激的脂肪来源间充质干细胞(ASCs)分离的 EVs。geNorm、NormFinder、BestKeeper 和 ΔCt 方法确定 miR-26a-5p/16-5p 是最稳定的,而 miR-103a-rp/425-5p 表现不佳。我们的结果在参与 OA 软骨营养的 miRNAs 上进行了验证。只有适当的归一化策略才能可靠地识别供体之间的差异,这是增强未来现成 MSC-EV 分离物治疗价值的关键因素。总之,所提出的方案提高了 MSC-EVs 中嵌入 miRNA 评估的准确性,并有助于预测供体变异性,以实现精准医学方法。